1 citations
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May 2020 in “bioRxiv (Cold Spring Harbor Laboratory)” A special gel scaffold was made that speeds up wound healing and skin regeneration, even though it breaks down faster than expected.
1 citations
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January 2010 in “LA Referencia (Red Federada de Repositorios Institucionales de Publicaciones Científicas)” Conditioners improved hair protein retention and combing ease, with some providing thermal protection.
June 2026 in “Gümüşhane Üniversitesi Fen Bilimleri Enstitüsü Dergisi” PVA/agar films with Achillea millefolium essential oil are promising for wound dressings due to good strength and selective antibacterial effects.
May 2026 in “Zenodo (CERN European Organization for Nuclear Research)” Amalaki Churna effectively reduces hair fall and improves hair strength.
May 2026 in “Zenodo (CERN European Organization for Nuclear Research)” Amalaki Churna effectively reduces hair fall and improves hair health.
January 2026 in “Journal of Applied Polymer Science” The new fiber offers long-lasting minoxidil release and can be used in wigs for hair treatment and coverage.
November 2025 in “Advanced Healthcare Materials” Charge-conversion chemistry improves hair-rebonding by enhancing penetration and strength.
November 2025 in “International Journal of Biological Macromolecules” This eco-friendly hair dye method improves hair health and color durability.
January 2025 in “Turkish Journal of Trauma and Emergency Surgery” Rosemary extract may increase the risk of wound opening after surgery.
October 2024 in “UNESP Institutional Repository (São Paulo State University)” Straightening and dyeing damage hair structure.
June 2024 in “British Journal of Dermatology” Hair oiling has become popular in the West due to globalization and social media.
October 2021 in “Digital Library of Theses and Dissertations (Universidade de São Paulo)” The active ingredient improves the strength of damaged hair fibers.
July 2019 in “Ferroelectrics” More human hair protein makes the films weaker and less clear.
January 2016 in “Frontiers in Bioengineering and Biotechnology” A wool hair keratin hydrogel is promising for growing cells and tissue engineering.
January 2016 in “Belarusian State Pedagogical University repository (Belarusian State Pedagogical University)” A 6-group geometric classification of human scalp hair is more reliable and objective for testing than an 8-group system.
April 2023 in “Chinese Medical Journal” Human hair follicle stem cells help repair tendon injuries.
January 2025 in “SSRN Electronic Journal” 2 citations
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September 2023 in “bioRxiv (Cold Spring Harbor Laboratory)” Tissue stiffness is influenced by contractility, which suppresses collagen breakdown.
July 2024 in “Journal of Investigative Dermatology” Mechanical tension worsens keloid scars by activating inflammation and fibrosis pathways.
10 citations
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January 2002 in “Nihon Keshouhin Gijutsushakaishi/Journal of S C C./Nihon Keshouhin Gijutsushakai kaishi” The cuticle significantly contributes to hair stiffness, making up about 60% of the total bending stress.
9 citations
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March 2019 in “Molecular & cellular proteomics” Reductive stress messes up collagen balance and alters cell signaling in human skin cells, which could help treat certain skin diseases.
August 2025 in “bioRxiv (Cold Spring Harbor Laboratory)” Root hair stiffness is mainly influenced by tip compression and turgor pressure.
February 2026 in “The European Physical Journal E” Root hair growth mechanics depend on turgor pressure and cell wall properties.
November 2015 in “Summit (Simon Fraser University)” Surgical stress temporarily changes hair fiber dimensions, returning to normal after four weeks.
4 citations
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August 2018 in “Journal of Cosmetic Dermatology” Wound tension after hair transplant surgery increases with strip size and is higher on the sides, affecting scarring.
1 citations
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April 2024 in “Lasers in Surgery and Medicine” The model helps improve medical devices by showing how skin deforms under pressure.
22 citations
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January 1985 Water makes hair more flexible, especially the outer layer.
2 citations
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April 2019 in “Experimental Dermatology” Hair follicles respond differently to pulling forces in various regions.
Mechanical stress causes ligament thickening through WISP-1 and Hedgehog signaling.
10 citations
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January 2015 in “International Journal of Trichology” Mechanical stress contributes to hair loss in androgenetic alopecia.